首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   125249篇
  免费   6461篇
  国内免费   14130篇
化学   70960篇
晶体学   1164篇
力学   2415篇
综合类   897篇
数学   14592篇
物理学   19259篇
综合类   36553篇
  2024年   184篇
  2023年   906篇
  2022年   2383篇
  2021年   2402篇
  2020年   2731篇
  2019年   2727篇
  2018年   2446篇
  2017年   3367篇
  2016年   3593篇
  2015年   3522篇
  2014年   4454篇
  2013年   7640篇
  2012年   8078篇
  2011年   6994篇
  2010年   5752篇
  2009年   7287篇
  2008年   7735篇
  2007年   8955篇
  2006年   8324篇
  2005年   7101篇
  2004年   6635篇
  2003年   5475篇
  2002年   6298篇
  2001年   4010篇
  2000年   3721篇
  1999年   3422篇
  1998年   2805篇
  1997年   2344篇
  1996年   1995篇
  1995年   1821篇
  1994年   1687篇
  1993年   1469篇
  1992年   1351篇
  1991年   1025篇
  1990年   860篇
  1989年   820篇
  1988年   620篇
  1987年   463篇
  1986年   352篇
  1985年   252篇
  1984年   250篇
  1983年   144篇
  1982年   215篇
  1981年   180篇
  1980年   197篇
  1979年   183篇
  1978年   172篇
  1977年   127篇
  1976年   108篇
  1973年   68篇
排序方式: 共有10000条查询结果,搜索用时 9 毫秒
1.
使用实验轧机旁冷却装置配合轧机进行轧制实验,研究轧制道次间不同冷却工艺对特厚钢板组织和性能的影响规律.研究结果表明:采用道次间冷却工艺可以在全厚度方向获得组织细化及强韧性提高效果,采用强冷道次间冷却实验钢1/4处晶粒尺寸可细化至10μm,强度为376MPa,-40℃冲击功为169J;心部晶粒尺寸可细化至15μm,强度为360MPa,-40℃冲击功为123J.本工艺可形成470μm厚表层细晶层,晶粒尺寸可细化至5μm;粗轧道次间插入冷却工艺轧制钢板强度和冲击韧性优于中间坯冷却工艺;随冷却强度增加,钢板内部组织明显细化且强度大幅提高.  相似文献   
2.
利用初等方法研究了一个包含Smarandache Ceil函数Sk(n)的对偶函数-Sk(n),给出了当k=6时方程-S6(1)+-S6(2)+…+-S6(n)=6Ω(n)的具体正整数解。  相似文献   
3.
王海军 《高分子科学》2015,33(6):823-829
The effects of PEA on the γ-phase PVDF crystal structure and the crystallization of PEA within the pre-existing γ-phase PVDF spherulites have been investigated by optical microscopy(OM), infrared spectroscopy(IR) and scanning electron microscopy(SEM). The results demonstrate that the γ-phase PVDF spherulites consist of the lamellae exhibiting a highly curved scroll-like morphology and develop preferentially in PEA-rich blend. With increasing PEA concentration, the scroll diameter increases and the scrolls are better separated from each other. PEA crystallizes first in the interspherulitic region and transcrystalline layer develops. Subsequently, the transcrystalline layer of PEA continues to grow within the γ-phase PVDF spherulites, e.g., in the region between the scrolls, until impinging on other PEA transcrystalline layers or spherulites. The crystallization kinetics results indicate that the growth rate of PEA crystals in the intraspherulitic region of γ-phase PVDF shows a positive correlation with content of PEA, but a negative one with the crystallization temperature of γ-phase PVDF.  相似文献   
4.
《Current Applied Physics》2015,15(3):319-325
Pd is one of the metals suitable for inducing low-temperature crystallization in Ge. However, it is not clear how residual Pd atoms are integrated into the Ge lattice. Therefore, time-differential γ–γ perturbed angular correlations (TDPAC) technique using the 100Pd(→100Rh) nuclear probe produced by recoil implantation has been applied to study the hyperfine interactions of this probe in single-crystalline undoped Ge. A Pd-vacancy complex aligned along the <111> crystallographic direction with a unique interaction frequency of 8.4(5) Mrad/s has been identified. This complex was measured to have a maximum relative fraction of about 76(4)% following annealing at 350 °C. Further annealing at higher temperatures reduced this fraction, possibly via dissociation of the complex. Calculations suggest dissociation energy of 1.94(5) eV for the complex. DFT calculations performed in this work are in reasonable good agreement with the experimental values for the electric-field gradient of the defect complex in Ge and Si for comparison. The calculations predict a split-vacancy configuration with the Pd on a bond-centred interstitial site having a nearest-neighbour semi-vacancy on both sides (V-PdBI-V) in Ge and Si.  相似文献   
5.
6.
刺山柑在吐鲁番地区维吾尔族民间药用价值研究   总被引:1,自引:0,他引:1  
刺山柑(capparis spinosa L.)是全世界公认的民间药用植物,具有较高的药用价值.采用民族植物学的关键人物访谈法,对该物种在新疆吐鲁番地区维吾尔族民间的医药作用进行了调研.结果表明,刺山柑的叶、根、根皮、花、果实及种子在民间医药中的处方有3种单方和4种复方.其中的单用刺山柑能治疗风湿病、慢性关节炎及肩周炎;而刺山柑与14种植物混合用的4种复方能治疗11种疾病.初步揭示了刺山柑在吐鲁番维吾尔族的民间处方及医药作用,为新药品及保健品的开发提供理论资料.  相似文献   
7.
Rupestonic acid, a potential anti‐influenza agent, is an important and characteristic compound in Artemisia rupestris L., a well‐known traditional Uighur medicine for the treatment of colds. In the present study, high‐performance liquid chromatography combined with electrospray ionization quadrupole time‐of‐flight tandem mass spectrometry was used to detect and identify the metabolites in rat urine after oral administration of rupestonic acid. A total of 10 metabolites were identified or partially characterized. The structure elucidations of the metabolites were performed by comparing the changes in accurate molecular masses and fragment ions with those of the parent compound. The results showed that the main metabolites of rupestonic acid in rat urine were formed by oxidation, hydrogenation and glucuronidation. A metabolism pathway was proposed for the first time based on the characterized structures. This metabolism study can provide essential information for drug discovery, design and clinical application of rupestonic acid. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   
8.
Processing of Carapa guianensis seeds to obtain oil on an industrial scale generates a significant amount of by-product, approximately 66% w/w, which is called cake and is a potential source of biomolecules, including simple phenolic structures. For this reason, studies were carried out on the chemical profiles of hydrolyzed extract from this agro-industrial by-product through High Performance Thin-Layer Chromatography (HPTLC) and Gas Chromatography coupled to Mass Spectrometry (GC–MS). These techniques were used to detect metabolic classes and/or groups, and to identify, for the first time, thirteen simple phenolic acids in this by-product. The sample antioxidant capacity was determined by methods of 2,2-diphenyl-1-picrylhydrazyl (DPPH)and 2,2′-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt (ABTS+) radicals direct sequestration. The hydrolyzed fraction showed a total of 63.47% in the relative abundance of the total of compounds, standing out: p-hydroxybenzoic acid (39.19%) and protocatechuic acid (3,4-dihydroxybenzoic acid) (5.62%), both from hydroxybenzoic acids and 3-(3,4-dihydroxyphenyl)lactic acid, (7.76%) hydroxycinnamic acids derivatives. In these results, the fraction rich in simple phenolic acids was obtained, attributing the prominent behavior of this matrix antioxidant activity, expressed by (IC50: of 16.42 µg/mL and 6.52 µg/mL for DPPH and ABTS+ radicals, respectively). The research demonstrated an alternative to applicability that involves sustainability from agro-industrial. These techniques were used to detect metabolic classes and/or groups, and to identify, for the first time, thirteen simple phenolic acids in this by-product, generating a process capable of converting biomass into a bioproduct, consisting of bioactive compounds, in addition to adding value to the industrial chain.  相似文献   
9.
热运动对纳米级磁流变液系统的颗粒团聚行为和宏观流变特性扰动影响不可忽视.为研究施加外磁场后系统微结构与热运动间的关系,探讨在不同颗粒粒径情况下热运动能量在系统总能量中的占比.采用CCD设计方法,分析Monte Carlo仿真获取的颗粒位形信息,生成关于外磁场磁感应强度、颗粒粒径和体积分数的系统热耦合系数<λ>回归模型;成链团聚的临界颗粒粒径计算值比文献经验值高出约23%,证实在考虑系统内多因素的综合影响下,纳米级磁流变液具有更严格的流变现象临界发生条件.  相似文献   
10.
The Pd‐catalyzed polycondensation of 4‐octylaniline with various dibromoarylenes was carried out under microwave heating. Microwave heating led to a decrease in the reaction time and an increase in the molecular weight of the polymers as compared to conventional heating. Microwave heating also allowed the catalyst loading to be reduced to 1 mol %, yielding polymerization results that were comparable to those under conventional heating and 5 mol % catalyst. Investigations regarding field‐effect transistors and organic photovoltaic cells using the obtained poly(arylamine) with azobenzene units revealed that increasing the molecular weight of the polymer led to improved device performance, including hole mobility and power conversion efficiency. © 2014 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2015 , 53, 536–542  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号